/* Test whether a basic ldexpl invocation works. */ /* This test is generated by misc/genbasic.c. */ #include #include #include #include "../basic.h" #pragma STDC FENV_ACCESS ON #define MF_UNSPEC1 (1 << 0) #define MF_UNSPEC2 (1 << 1) #define MF_MAYERR (1 << 2) // Soft fail on rounding errors and report only one. int imprecise; static const char* fperrname(int excepts) { switch ( excepts ) { case 0: return "FE_NONE"; case FE_INVALID: return "FE_INVALID"; case FE_DIVBYZERO: return "FE_DIVBYZERO"; case FE_OVERFLOW: return "FE_OVERFLOW"; case FE_UNDERFLOW: return "FE_UNDERFLOW"; default: return "FE_MULTIPLE"; } } void test(int variant, long double input1, int input2, int errnum, int fperr, long double lower, long double expected, long double upper, int flags) { errno = 0; if ( feclearexcept(FE_ALL_EXCEPT) ) errx(1, "feclearexcept"); long double output = ldexpl(input1, input2); if ( errnum == 0 && errno ) err(1, "(%d.) ldexpl(%.4Lf, %d) failed", variant, input1, input2); if ( (math_errhandling & MATH_ERRNO) && errnum && errno != errnum ) errx(1, "(%d.) ldexpl(%.4Lf, %d) did not %s", variant, input1, input2, strerrno(errnum)); int excepts = fetestexcept(FE_INVALID | FE_DIVBYZERO | FE_OVERFLOW | FE_UNDERFLOW); if ( fperr == 0 && excepts ) errx(1, "(%d.) ldexpl(%.4Lf, %d) %s", variant, input1, input2, fperrname(excepts)); if ( (math_errhandling & MATH_ERREXCEPT) && fperr != 0 && excepts != fperr && !((flags & MF_MAYERR) && !excepts) ) errx(1, "(%d.) ldexpl(%.4Lf, %d) did not %s", variant, input1, input2, fperrname(fperr)); if ( !(flags & MF_UNSPEC1) ) { if ( !(isnan(expected) ? isnan(output) : isfinite(expected) && expected != 0.0 ? isfinite(output) && (output == expected || (lower < output && output < upper)) : output == expected) ) { if ( imprecise && isfinite(output) && isfinite(expected) ) return; warnx("(%d.) ldexpl(%.4Lf, %d) = %.17La, not %.17La, diff %.17La, ratio %.20Lg", variant, input1, input2, output, expected, output - expected, output / expected); if ( !isfinite(output) || !isfinite(expected) ) exit(1); imprecise = 1; } } } int main(void) { test(1, 13, 13.37, 0, 0, 0xc.fffffffffffffffp+13L, 0xd.0p+13L, 0xd.000000000000001p+13L, 0); test(2, -12.34, 13.37, 0, 0, -0xc.570a3d70a3d7001p+13L, -0xc.570a3d70a3d7p+13L, -0xc.570a3d70a3d6fffp+13L, 0); test(3, nanl(""), 13.37, 0, 0, nanl(""), nanl(""), nanl(""), 0); test(4, strtold("inf", NULL), 13.37, 0, 0, strtold("inf", NULL), strtold("inf", NULL), strtold("inf", NULL), 0); test(5, strtold("-inf", NULL), 13.37, 0, 0, strtold("-inf", NULL), strtold("-inf", NULL), strtold("-inf", NULL), 0); test(6, 0.0, 13.37, 0, 0, -0x0.000000000000001p-16385L, 0x0.0p+0L, 0x0.000000000000001p-16385L, 0); return imprecise; }